Chinese Journal of Lasers, Volume. 36, Issue 10, 2636(2009)
Fiber Confocal Back-Scattering Micro-Spectrum in Single Biology Cellular Scale
[1] [1] V. Backman,M. B. Wallace,L. T. Perelman et al.. Detection of preinvasive cancer cells[J]. Nature,2000,406:35-36
[2] [2] Wang Cheng,Fan Jin,Ren Qiushi. Visible light reflectance spectrum for measurement of cancerous tissue[J]. Spectroscopy and Spectral Analysis,2008,13(1):33-36
[3] [3] J. R. Mourant,M. Canpolat,C. Brocker et al.. Light scattering from cells:the contribution of the nucleus and the effects of proliferative status[J]. J. Biomedical Opt.,2000,5(2):131-137
[4] [4] Judith R. Mourant,James P. Freyer,Andreas H. Hielscher et al.. Mechanisms of light scattering from biological cells relevant to noninvasive optical-tissue diagnostics[J]. Appl. Opt.,,1998,37(16):3586-3593
[5] [5] R. Drezek,M. Guillaud,T. Collier et al.. Light scattering from cervical cells throughout neoplastic progression:influence of nuclear morphology,DNA content,and chromatin texture[J]. J. Biomedical Opt.,2003,8(1):7-16
[6] [6] J. G. Fujimoto. Optical coherence tomography for ultrahigh resolution in vivo imaging [J]. Nature Biotechnol.,2003,21:1361-1367
[7] [7] L. Lovat,S. Bown. Elastic scattering spectroscopy for detection of dysplasia in Barrett's esophagus[J]. Gastrointest Endosc Clin N Am.,2004,14(3):507-517
[8] [8] P. J. Dwyer,C. A. Dimarzio,J. M. Zavislan et al.. Confocal reflectance theta line scanning microscope for imaging human skin in vivo[J]. Opt. Lett.,2006,31:942-944
[9] [9] A. Brunsting,P.F. Mullaney. Light scattering from coated spheres:model for biological cells[J]. Appl. Opt.,1972,11(3):675-680
[10] [10] P. M. A. Sloot,C. G. Figdor. Elastic light scattering from nucleated blood cells:rapid numerical analysis [J]. Appl. Opt.,1986,25(19):3559-3565
[12] [12] P. M. A. Sloot,C. G. Figdor. Elastic light scattering from nucleated blood cells:rapid numerical analysis[J]. Appl. Opt.,1986,25(19):3559-3565
[13] [13] Rebekah Drezek,Andrew Dunn,Rebecca Richards-Kortum. Light scattering from cells:finited-difference time-domain simulations and goniomotric measurements[J]. Appl. Opt.,1999,38(16):3651-3660
[14] [14] M. Xu,T. T. Wu,J. Y. Qu. Unified Mie and fractal scattering by cells and experimental study on application in optical characterization of cellular and subcellular structures[J]. J. Biomedical Opt.,2008,13(3):024015
[15] [15] Tao T. Wu,Jianan Y.Qu. Assessment of the relative contribution of cellular components to the acetowhitening effect in cell culture and suspensions using elastic light-scattering spectroscopy [J]. Appl. Opt.,2007,46(21/20):4834-4842
[16] [16] Yang Liu,Xu Li,Young L. Kim et al.. Elastic backscattering spectroscopic microscopy [J]. Opt. Lett.,2005,30(18):2445-2447
[17] [17] Hui Fang,Le Qiu,Edward Vitkin et al.. Confocal light absorption and scattering spectroscopic microscopy [J]. Appl. Opt.,2007,46(10):1760-1769
[18] [18] Sung Kungbin. Fiber optic confocal reflectance microscopy:in vivo detection of pre-cancerous lesions in epithelial tissue[D] . Austin:University of Texas,2003
[19] [19] Rebekah Drezek,Andrew Dunn,Rebecca Richards-Kortum. A pulsed finited-difference time-domain (FDTD) method for calculating light scattering from biological cells over broad wavelength ranges [J]. Opt. Express.,2006,6(7):147-156
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Wang Cheng, Fang Baoying, Cai Wenjie, Xu Ancheng, Chen Yun, Li Yan, Wei Xunbin. Fiber Confocal Back-Scattering Micro-Spectrum in Single Biology Cellular Scale[J]. Chinese Journal of Lasers, 2009, 36(10): 2636
Category: spectroscopy
Received: Jan. 8, 2009
Accepted: --
Published Online: Oct. 23, 2009
The Author Email: Cheng Wang (shhwangcheng@yahoo.com.cn)